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首页> 外文期刊>European neuropsychopharmacology: the journal of the European College of Neuropsychopharmacology >The time course of unconditioned morphine-induced psychomotor sensitization mirrors the phosphorylation of FADD and MEK/ERK in rat striatum: role of PEA-15 as a FADD-ERK binding partner in striatal plasticity.
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The time course of unconditioned morphine-induced psychomotor sensitization mirrors the phosphorylation of FADD and MEK/ERK in rat striatum: role of PEA-15 as a FADD-ERK binding partner in striatal plasticity.

机译:非条件吗啡诱导的精神运动敏化的时间过程反映了大鼠纹状体中FADD和MEK / ERK的磷酸化:PEA-15作为FADD-ERK结合伴侣在纹状体可塑性中的作用。

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Drugs of abuse induce behavioral neuroadaptations whose molecular mechanisms, partly known, are crucial to understanding drug addictions. The multifunctional adaptor Fas-associated protein with death domain (FADD) was recently associated with the induction of neuroplasticity. This study investigated the modulation of FADD and MAP kinase signaling, as well as their interactions with PEA-15 (phosphoprotein enriched in astrocytes-15 kDa) and Akt1 pathways, during the expression of unconditioned morphine-induced psychomotor sensitization. In morphine-pretreated rats (10mg/kg during 5 days), a challenge dose of the opiate induced a robust psychomotor sensitization at early withdrawal (3 days, SW 3), but not after a prolonged abstinence period (14 days), which was coincident with an accelerated dopamine turnover in the striatum. Marked concomitant increases in the content of p-FADD (48%) and the activation of MEK-ERK (46-79%) were quantified during the short-term expression of morphine sensitization (SW 3, in the absence of morphine challenge). At SW 3, p-PEA-15, a FADD-ERK binding partner, was also upregulated (51%) as well as the activation of its phosphorylating Akt1 kinase (49%). Notably, the MEK inhibitor SL 327 attenuated (58%) the expression of morphine-induced psychomotor sensitization (SW 3) and fully prevented the upregulation of p-FADD, p-PEA-15 and p-Akt1 at SW 3. The results indicate that the activation of MEK/ERK, the upregulation of p-FADD and that of the linking partners PEA-15/Akt1 have a major role in mediating the short-lasting expression of unconditioned psychomotor sensitization induced by morphine in rats.
机译:滥用药物会诱发行为神经适应,其分子机制(部分已知)对于理解药物成瘾至关重要。具有死亡域(FADD)的多功能适配器Fas相关蛋白最近与诱导神经可塑性有关。这项研究调查了在无条件吗啡诱导的精神运动敏化过程中,FADD和MAP激酶信号传导的调节,以及它们与PEA-15(富含星形胶质细胞15 kDa的磷酸化蛋白)和Akt1途径的相互作用。在吗啡预处理的大鼠(5天内为10mg / kg)中,阿片激发剂量在提早戒断(3天,SW 3)时诱导了强烈的精神运动敏化,但在禁欲期较长(14天)后没有。与纹状体中多巴胺更新加速有关。在吗啡敏化的短期表达过程中(SW 3,在没有吗啡激发的情况下),对p-FADD含量(48%)和MEK-ERK的激活(46-79%)的伴随显着增加进行了定量。在SW 3,p-PEA-15(FADD-ERK的结合伴侣)也被上调(51%)以及其磷酸化Akt1激酶的激活(49%)。值得注意的是,MEK抑制剂SL 327减弱(58%)吗啡诱导的精神运动敏化(SW 3)的表达,并完全阻止了SW 3上p-FADD,p-PEA-15和p-Akt1的上调。结果表明认为MEK / ERK的激活,p-FADD的上调以及连接伙伴PEA-15 / Akt1的激活在介导吗啡诱导的大鼠无条件精神运动敏化的短期表达中起主要作用。

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